Yan Wenhao, Jiang Zijing, Huang Xin, Ding Qun
Electronic Engineering College, Heilongjiang University, Harbin 150080, China.
Entropy (Basel). 2021 Sep 17;23(9):1221. doi: 10.3390/e23091221.
Chaos is considered as a natural candidate for encryption systems owing to its sensitivity to initial values and unpredictability of its orbit. However, some encryption schemes based on low-dimensional chaotic systems exhibit various security defects due to their relatively simple dynamic characteristics. In order to enhance the dynamic behaviors of chaotic maps, a novel 3D infinite collapse map (3D-ICM) is proposed, and the performance of the chaotic system is analyzed from three aspects: a phase diagram, the Lyapunov exponent, and Sample Entropy. The results show that the chaotic system has complex chaotic behavior and high complexity. Furthermore, an image encryption scheme based on 3D-ICM is presented, whose security analysis indicates that the proposed image encryption scheme can resist violent attacks, correlation analysis, and differential attacks, so it has a higher security level.
由于对初始值敏感且轨道具有不可预测性,混沌被认为是加密系统的天然候选对象。然而,一些基于低维混沌系统的加密方案由于其相对简单的动态特性而存在各种安全缺陷。为了增强混沌映射的动态行为,提出了一种新颖的三维无限坍塌映射(3D-ICM),并从相图、李雅普诺夫指数和样本熵三个方面分析了混沌系统的性能。结果表明,该混沌系统具有复杂的混沌行为和高复杂性。此外,还提出了一种基于3D-ICM的图像加密方案,其安全性分析表明,所提出的图像加密方案能够抵抗暴力攻击、相关性分析和差分攻击,因此具有较高的安全级别。